Controlled Release of Dual Antibacterial Drug from Composite Hydrogels

Pitirat Pholpabu, Pattira Somharnwong, Nattathida Huaybun, Chanatip Cherdbaramee, Vichapas Boonpasart, Lakkhanabut Komchum, Achiya Phuengsap
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Abstract

Hydrogels with a controlled release of dual antibacterial drug have been developed to effectively prevent bacterial infections for biomedical applications. The synergistic dual drug aims to fight against drug resistant bacteria, which become more commonly found nowadays. In this study, we fabricated composite hydrogels using calcium carbonate microspheres as drug carriers to load a combination of tetracycline and ampicillin into the matrices for controlled drug release. The composite hydrogels were prepared using three different molar ratios between polymers and crosslinkers to investigate the effect of crosslink density on the physical properties and drug release. The drug release profiles were quantitatively analyzed to compare diffusivity and release mechanism. The results revealed that the crosslinker molar ratio influenced not only the physical properties, but also the drug release rate and mechanism. The different release characteristics of the drugs also suggested chemical interactions between the calcium carbonate microspheres and the small molecules. Such insight could assist designing of composite hydrogels for controlled dual drug release in biomedical applications.
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复合水凝胶双抗菌药物的控释研究
具有双抗菌药物控释的水凝胶可以有效地预防生物医学领域的细菌感染。这种协同双重药物旨在对抗如今越来越普遍的耐药细菌。本研究以碳酸钙微球为药物载体,制备复合水凝胶,将四环素和氨苄西林的混合物装入基质,实现药物的控释。采用三种不同的聚合物与交联剂的摩尔比制备复合水凝胶,考察交联密度对其物理性能和药物释放的影响。定量分析药物释放谱,比较扩散率和释放机制。结果表明,交联剂的摩尔比不仅影响药物的物理性质,而且影响药物的释放速度和释放机制。药物的不同释放特性也提示碳酸钙微球与小分子之间存在化学相互作用。这种见解可以帮助设计用于生物医学应用中控制双重药物释放的复合水凝胶。
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